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In-Situ Observation of Radiation Damage Using a Combined Facility of Electron Microscope and Heavy-Ion Accelerator(s) -History and Future Prospectives

机译:使用电子显微镜和重离子加速器的组合装置进行辐射损伤的原位观察-历史和未来展望

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摘要

Radiation effects in materials for fission and fusion reactors are caused by fast neutrons which produce cascade damage, which has been known to be considerably different from simple Frenkel pairs produced by relativistic electrons. In-situ observation of radiation damage using a combined facility of electron microscope and heavy-ion accelerators has been a powerful tool to investigate the nature of the cascade damage. In this overview, brief historical survey of this experimental technique will be given, followed by the results and discussions on cascade damage mainly in gold will be reviewed. Careful considerations will be required to generalize the results to other metals as well as to other experimental conditions. Finally, there are a number of points to be developed for better understanding of cascade damage and for extending the "in-situ" techniques to other materials as non-metallic solids and to other intriguing phenomena.
机译:裂变和聚变反应堆材料的辐射效应是由产生级联损伤的快中子引起的,众所周知,这种快中子与相对论电子产生的简单Frenkel对有很大不同。使用电子显微镜和重离子加速器的组合设备对辐射损伤进行原位观察已成为研究级联损伤性质的有力工具。在本概述中,将对该实验技术进行简要的历史考察,然后对结果进行讨论,并讨论主要针对金的级联损伤的讨论。将结果推广到其他金属以及其他实验条件时,将需要仔细考虑。最后,为了更好地理解级联损伤并将“原位”技术扩展到其他材料(如非金属固体)和其他引人入胜的现象,还有很多要发展的方面。

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